{"title":"[Annual review of capillary electrophoresis technology in 2023].","authors":"Yu-Chen Shao, Ya-Lun Wen, Xin-Ying Zhao, Feng Qu","doi":"10.3724/SP.J.1123.2024.02007","DOIUrl":null,"url":null,"abstract":"<p><p>This paper serves as an annual review of capillary electrophoresis (CE) technology for 2023. The journals were selected based on their impact factor (IF), a universally recognized academic performance metric, combined with experimental work closely related to CE technology, to facilitate the rapid acquisition of significant research and application advancements in CE technology in 2023. A thematic search of the ISI Web of Science database yielded 669 research papers on CE technology published in 2023. This review highlights five experimental papers published in journals with IFs greater than 10.0, including <i>Nature Communications</i>, <i>Nucleic Acids Research</i>, <i>Engineering</i>, <i>Journal of Medical Virology</i>, and <i>Carbohydrate Polymers</i>, and 31 experimental papers from representative journals with IFs between 5.0 and 10.0, such as <i>Analytical Chemistry</i>, <i>Analytica Chimica Acta</i>, <i>Talanta</i>, and <i>Food Chemistry</i>. It also provides an overview of experimental research in journals with focused reporting on CE technology but with IFs less than 5.0, such as <i>Journal of Chromatography A</i> and <i>Electrophoresis</i>, as well as significant experimental research from key domestic Chinese core journals (Peking University). In 2023, all the latest scientific advancements reported in journals with an IF greater than 10.0 utilized previously reported CE methods, offering new breakthroughs for the promotion and application of CE technology. Additionally, new applications of CE in conjunction with mass spectrometry remained a hot topic. An increase in reports on the hardware aspects of CE, such as 3D printing and underwater systems, and significant breakthroughs in the analysis of non-solution samples, such as solid particles, cell vesicles, cells, viruses, and bacteria, was noted. CE is advantageous for the analysis of drugs and their components. In Chinese journals, the number of papers on CE applications exceeded that in previous years, with particular focus on the field of printing for new applications.</p>","PeriodicalId":101336,"journal":{"name":"Se pu = Chinese journal of chromatography","volume":"42 5","pages":"401-409"},"PeriodicalIF":0.0000,"publicationDate":"2024-04-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11089452/pdf/","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Se pu = Chinese journal of chromatography","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3724/SP.J.1123.2024.02007","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
This paper serves as an annual review of capillary electrophoresis (CE) technology for 2023. The journals were selected based on their impact factor (IF), a universally recognized academic performance metric, combined with experimental work closely related to CE technology, to facilitate the rapid acquisition of significant research and application advancements in CE technology in 2023. A thematic search of the ISI Web of Science database yielded 669 research papers on CE technology published in 2023. This review highlights five experimental papers published in journals with IFs greater than 10.0, including Nature Communications, Nucleic Acids Research, Engineering, Journal of Medical Virology, and Carbohydrate Polymers, and 31 experimental papers from representative journals with IFs between 5.0 and 10.0, such as Analytical Chemistry, Analytica Chimica Acta, Talanta, and Food Chemistry. It also provides an overview of experimental research in journals with focused reporting on CE technology but with IFs less than 5.0, such as Journal of Chromatography A and Electrophoresis, as well as significant experimental research from key domestic Chinese core journals (Peking University). In 2023, all the latest scientific advancements reported in journals with an IF greater than 10.0 utilized previously reported CE methods, offering new breakthroughs for the promotion and application of CE technology. Additionally, new applications of CE in conjunction with mass spectrometry remained a hot topic. An increase in reports on the hardware aspects of CE, such as 3D printing and underwater systems, and significant breakthroughs in the analysis of non-solution samples, such as solid particles, cell vesicles, cells, viruses, and bacteria, was noted. CE is advantageous for the analysis of drugs and their components. In Chinese journals, the number of papers on CE applications exceeded that in previous years, with particular focus on the field of printing for new applications.
本文是 2023 年毛细管电泳(CE)技术的年度综述。选择这些期刊的依据是其影响因子(IF),这是一项公认的学术绩效指标,同时结合与毛细管电泳技术密切相关的实验工作,以便快速获取2023年毛细管电泳技术的重大研究和应用进展。通过对 ISI Web of Science 数据库进行专题检索,2023 年发表了 669 篇有关 CE 技术的研究论文。本综述重点介绍了发表在《Nature Communications》、《Nucleic Acids Research》、《Engineering》、《Journal of Medical Virology》和《Carbohydrate Polymers》等国际因子大于 10.0 的期刊上的 5 篇实验论文,以及发表在《Analytical Chemistry》、《Analytica Chimica Acta》、《Talanta》和《Food Chemistry》等国际因子在 5.0 到 10.0 之间的代表性期刊上的 31 篇实验论文。本报告还概述了《色谱 A 学报》和《电泳学报》等重点报道 CE 技术但 IF 值小于 5.0 的期刊的实验研究情况,以及国内重点中文核心期刊(北京大学)的重要实验研究情况。2023 年,IF 大于 10.0 的期刊上报道的所有最新科学进展都采用了之前报道过的 CE 方法,为 CE 技术的推广和应用提供了新的突破口。此外,CE 与质谱联用的新应用仍是热门话题。有关 CE 硬件方面(如 3D 打印和水下系统)的报道有所增加,在分析非溶液样品(如固体颗粒、细胞囊泡、细胞、病毒和细菌)方面也取得了重大突破。CE 在分析药物及其成分方面具有优势。在中文期刊中,有关 CE 应用的论文数量超过了往年,尤其集中在打印新应用领域。